Abstract:
Techniques for image stabilization may include detecting motion of an apparatus configured to display image data, the image data comprising one or more frames, a first frame of the one or more frames comprising a plurality of layers. The plurality of layers may be processed to correct for the detected motion. The processing may comprise applying a different degree of motion correction to a first layer of the plurality of layers than to a second layer of the plurality of layers. Such techniques may be performed via an apparatus comprising a display control unit configured to cause the image data to be displayed, and a motion correction unit configured to perform the processing.
Abstract:
An image processing apparatus includes: a matching processing unit calculating positions of center coordinates of all video data forming one frame image of multi-viewpoint video data with respect to coordinates of the origin of the one frame image using at least two pieces of video data forming the one frame image, and generating focus information as the calculation result; a motion vector detection unit detecting a motion vector, which indicates an overall motion of the one frame image, using one piece of video data of at least two pieces of video data forming the one frame image; a motion component separation processing unit separating motion components of the one frame image using the generated focus information and the detected motion vector; and a correction unit correcting all of the video data forming the one frame image using the motion components separated by the motion component separation processing unit.
Abstract:
The present invention provides a screw capable of efficiently transmitting rotational force of a driver bit to the screw while obtaining excellent interlocking effect of the driver bit with a cross-shaped groove of the screw. In the structure of the cross-shaped groove of the screw for fit with a driver bit, bilaterally-formed inner side faces of each of the first to fourth wing grooves 5 to 8 constituting the cross-shaped groove 10 arranged at a head portion 3 of the screw 1 are defined into a pair of base-end inner side faces 11, a pair of intermediate inner side faces 12 and a pair of distal-end inner side faces 13; flexion angles are set to satisfy the relation of “the flexion angle α1 of the base-end inner side face 11
Abstract:
An image processing device, comprising: a motion vector detection unit configured to detect, from frame image data made up of frame images, motion vectors representing motion of the frame images; a modeling unit configured to model the motion vector, detected by the motion vector detection unit, to a component separation expression in which a camera motion component and a focal plane distortion component are separated, using unknown component parameters respectively representing camera motion which is motion of a camera, and the amount in change in focal plane distortion; and a component calculation unit configured to calculate the component parameters used in the component separation expression, thereby calculating the camera motion component in the motion vector.
Abstract:
An object of the invention is to detect the temperature of food and offer a good finish of cooking even in case a steam generator is arranged in a heating chamber.The controller avoids using the temperature data of an area overlapping the steam generator out of the temperature data from the infrared sensor in the detection judgment of food temperature in order to prevent detection errors in case steam heating is selected.
Abstract:
An image encoder divides an input image frame into a plurality of blocks, detects a motion vector of each block, arranges the blocks into one or more groups based on the motion vector, and calculates the first weighting coefficient based on the number of blocks included in each group. The image encoder arranges the plurality of blocks into one or more groups of blocks based on DC components of brightness and color information of each block, and calculates the second weighting coefficient based on the distance between the center of each block and the center of the input image frame. The image encoder determines a quantization step width based on one or two of the first and second weighting coefficients, using the detected motion vector. Further, the image encoder quantizes each of the plurality of blocks by the determined quantization step width so as to encode the input image frame.
Abstract:
Disclosed is a member of nylon 12 having a relative viscosity of from 1.9 to 3.5 when measured in 98% sulfuric acid at a concentration of 10 g/dm3 and at 25° C. and a melt flow rate of 0.1 g/10 min. or more when measured at 235° C. under a load of 2,160 g, wherein said relative viscosity and said melt flow rate have a relationship of the following formula (I): 2.87×103 exp (−3.48 &eegr;r)≦MFR≦3.25×104 exp (−3.48 &eegr;r) (I) wherein &eegr;r is relative viscosity and MFR is melt flow rate. The nylon 12 has excellent extrusion moldability and creep characteristics, fatigue characteristics and the like mechanical properties and is suited for tubular molds. A nylon 12 composition comprising the nylon 12 having the above-described specific relationship between &eegr;r and MFR and a plasticizer is also disclosed.
Abstract:
Undesirable deposition of polyoxymethylene onto the inner wall of a polymerization vessel and onto a stirrer, which deposition is observed in the slurry polymerization of formaldehyde carried out in an inert organic liquid medium in the presence of a polymerization catalyst, can be minimized by carrying out the slurry polymerization in the presence of at least one polyvalent metal salt selected from polyvalent metal salts of alkylsalicylic acids and polyvalent metal salts of dialkyl esters of sulfosuccinic acid. Optionally, a polyethylene glycol monoether may be used in addition to the polyvalent metal salt.
Abstract:
An image processing device, comprising: a motion vector detection unit configured to detect, from frame image data made up of frame images, motion vectors representing motion of the frame images; a modeling unit configured to model the motion vector, detected by the motion vector detection unit, to a component separation expression in which a camera motion component and a focal plane distortion component are separated, using unknown component parameters respectively representing camera motion which is motion of a camera, and the amount in change in focal plane distortion; and a component calculation unit configured to calculate the component parameters used in the component separation expression, thereby calculating the camera motion component in the motion vector.
Abstract:
There is provided an image processing apparatus including a distortion component calculation unit calculating a distortion component in a time series, based on an image signal indicating a moving image composed of a frame image, for each of a first region corresponding to the whole frame image, a second region corresponding to one region obtained by dividing the frame image, and a third region corresponding to the other region obtained by dividing the frame image, and a decision unit deciding a scanning pattern of an imaging device having captured the moving image, which the image signal indicates, based on a combination of a correlation of distortion between the second region and the first region and a correlation of distortion between the second region and the third region.